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首页> 外文期刊>International Journal of Aeroacoustics >The prediction of broadband shock-associated noise including propagation effects
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The prediction of broadband shock-associated noise including propagation effects

机译:包括传播效应在内的宽带冲击相关噪声的预测

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摘要

An acoustic analogy is developed based on the Euler equations for broadband shock-associated noise (BBSAN) that directly incorporates the vector Green's function of the linearized Euler equations and a steady Reynolds-Averaged Navier-Stokes solution (SRANS) to describe the mean flow. The vector Green's function allows the BBSAN propagation through the jet shear layer to be determined. The large-scale coherent turbulence is modeled by two-point second order velocity cross-correlations. Turbulent length and time scales are related to the turbulent kinetic energy and dissipation rate. An adjoint vector Green's function solver is implemented to determine the vector Green's function based on a locally parallel mean flow at different streamwise locations. The newly developed acoustic analogy can be simplified to one that uses the Green's function associated with the Helmholtz equation, which is consistent with a previous formulation by the authors. A large number of predictions are generated using three different nozzles over a wide range of fully-expanded jet Mach numbers and jet stagnation temperatures. These predictions are compared with experimental data from multiple jet noise experimental facilities. In addition, two models for the so-called 'fine-scale' mixing noise are included in the comparisons. Improved BBSAN predictions are obtained relative to other models that do not include propagation effects.
机译:基于针对宽带冲击相关噪声(BBSAN)的欧拉方程,开发了一种声学类比,该类比直接合并了线性化欧拉方程的矢量格林函数和稳定的雷诺平均Navier-Stokes解(SRANS),以描述平均流量。矢量格林函数可以确定BBSAN在射流剪切层中的传播。大规模相干湍流通过两点二阶速度互相关建模。湍流长度和时间尺度与湍动能和耗散率有关。实现了伴随矢量格林函数求解器,以基于在不同流向位置的局部并行平均流来确定矢量格林函数。新开发的声学类比可以简化为使用与亥姆霍兹方程相关的格林函数的方法,这与作者先前的表述是一致的。在广泛扩展的射流马赫数和射流停滞温度范围内,使用三个不同的喷嘴会产生大量预测。将这些预测与来自多个喷射噪声实验设施的实验数据进行了比较。此外,比较中还包括两个用于所谓“精细”混合噪声的模型。相对于其他不包含传播效应的模型,可以获得改进的BBSAN预测。

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